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Chapter 12 - Conformational Equilibrium of Human Platelet Integrin Investigated by Three-Dimensional Electron Cryo-Microscopy

机译:三维电子冷冻显微镜研究人体血小板整联蛋白的构象平衡

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摘要

Integrins are bidirectional transmembrane receptors that play central roles in hemostasis and arterial thrombosis. They have been subject to structural studies for many years, in particular using X-ray crystallography, nuclear magnetic resonance spectroscopy, and two-dimensional negative stain electron microscopy. Despite considerable progress, a full consensus on the molecular mechanism of integrin activation is still lacking. Three-dimensional reconstructions of full-length human platelet integrin a_(IIb)B_3 in lipid-bilayer nanodiscs obtained by electron cryo-microscopy and single-particle reconstruction have shed new light on the activation process. These studies show that integrin a_(IIb)B_3 exists in a continuous conformational equilibrium ranging from_( a compact nodular conformation similar to that obtained in crystal structures to a fully extended state with the leg domains separated. This equilibrium is shifted towards the extended conformation when extracellular ligands, cytosolic activators and lipid-bilayer nanodiscs are added. Addition of cytosolic activators and extracellular ligands in the absense of nanodiscs produces significantly less dramatic shifts, emphasizing the importance of the membrane bilayer in the activation process.
机译:整联蛋白是双向跨膜受体,其在止血和动脉血栓形成中起中心作用。它们已经经过多年的结构研究,特别是使用X射线晶体学,核磁共振光谱和二维负染色电子显微镜。尽管进展相当大,但仍然缺乏对整联素激活的分子机制的完全共识。通过电子冷冻显微镜和单粒子重建获得的脂质双层纳米蛋白的全长人血小板整联蛋白A_(IIB)B_3的三维重建在激活过程中脱落了新的光。这些研究表明,整合曲线A_(IIB)B_3存在于连续构象平衡范围(与晶体结构中的紧凑结节性构象类似,与分离的腿部域的晶体结构中获得的完全延伸状态相似。该平衡朝向延长的构象移动时添加细胞外配体,细胞溶质活化剂和脂质双层纳米乳糖。添加纳米芯片的细胞溶质活化剂和细胞外配体产生显着较小的剧烈变化,强调膜双层在激活过程中的重要性。

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